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54. UNE-EN 15459-1:2018. AENOR, 2018. Eficiencia energética de los edificios. Procedimiento
de evaluación económica de los sistemas energéticos de los edificios. Parte 1: Método de
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España (2018)
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Switzerland: ISO
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de la Edificación. Texto refundido con modificaciones del RD 1371/2007, de 19 de octubre,
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59. Martínez Rocamora A, Solís-Guzmán J, Marrero M (2017) Ecological footprint of the use
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doi:https://doi.org/10.1016/j.enbuild.2017.09.038
60. Freire-Guerrero A, Marrero-Meléndez M (2015) Ecological footprint in indirect costs of
construction, pp 969–980. In: Proceedings of the II International congress on sustainable
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61. CSI/CSC (2016) Construction Specifications Institute/Construction Specifications Canada.
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63. Telford T (1991) Civil engineering standard method of measurement. 3rd edn. LTD., UK, pp
4–39
64. Jones AR (1987) CI/SfB construction indexing manual. Royal Institute of British Architects
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65. Omniclass (2012) A strategy for classifying the built environment—table 13: spaces by
function
66. ITeC (2012) Institute of Construction Technology of Catalonia. Barcelona
67. Official College of Quantity Surveyors, Technical Architects and Building Engineers of
Guadalajara (2012) ‘PRECIOCENTRO of Guadalajara’
68. Ministry of the Environment and Planning of the Territory, Community of Madrid (2007).
‘BPCM Madrid’
69. Department of Housing, Public Works and Transport of the Basque Government (2012)
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72. Marrero M, Ramirez-De-Arellano A (2010) The building cost system in Andalusia: application to construction and demolition waste management. Constr Manage Econ 28(5):495–507
